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锂金属及其盐类吸收光谱的控制实验与优化理论

Controlled Experiments and Optimized Theory of Absorption Spectra of Li Metal and Salts.

作者信息

Roychoudhury Subhayan, Zhuo Zengqing, Qiao Ruimin, Wan Liwen, Liang Yufeng, Pan Feng, Chuang Yi-de, Prendergast David, Yang Wanli

机构信息

Advanced Light Source, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley California 94720, United States.

The Molecular Foundry, Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley California 94720, United States.

出版信息

ACS Appl Mater Interfaces. 2021 Sep 29;13(38):45488-45495. doi: 10.1021/acsami.1c11970. Epub 2021 Sep 16.

Abstract

Investigation of Li metal and ionic compounds through experimental and theoretical spectroscopy has been of tremendous interest due to their prospective applications in Li-metal and Li-ion batteries. Li K-edge soft X-ray absorption spectroscopy (sXAS) provides the most direct spectroscopic characterization; unfortunately, due to the low core-level energy and the highly reactive surface, Li-K sXAS of Li metal has been extremely challenging, as evidenced by many controversial reports. Here, through controlled and ultra-high energy resolution experiments of two kinds of prepared samples, we report the intrinsic Li-K sXAS of Li-metal that displays a prominent leading peak that has not been revealed before. Furthermore, theoretical simulations show that, due to the low number of valence electrons in Li, the Li-K sXAS is strongly affected by the response of the valence electrons to the core hole. We successfully reproduce the Li-K sXAS by state-of-the-art calculations with considerations of a number of relevant parameters such as temperature, energy resolution, and, especially, contributions from transitions which are forbidden in the single-particle treatment. Such a comparative experimental and theoretical investigation is further extended to a series of Li ionic compounds, which highlight the importance of considering the total and single-particle energies for obtaining an accurate alignment of the spectra. Our work provides the first reliable Li-K sXAS of the Li metal surface with advanced theoretical calculations. The experimental and theoretical results provide a critical benchmark for studying Li chemistry in both metallic and ionic states.

摘要

由于锂金属和离子化合物在锂金属电池和锂离子电池中的潜在应用,通过实验和理论光谱对其进行研究引起了极大的兴趣。锂K边软X射线吸收光谱(sXAS)提供了最直接的光谱表征;不幸的是,由于锂的内层能级较低且表面具有高反应活性,锂金属的Li-K sXAS极具挑战性,许多有争议的报道都证明了这一点。在此,通过对两种制备样品进行可控且超高能量分辨率的实验,我们报道了锂金属的本征Li-K sXAS,其显示出一个此前未被揭示的显著主峰。此外,理论模拟表明,由于锂的价电子数量较少,Li-K sXAS受到价电子对芯孔响应的强烈影响。我们通过考虑温度、能量分辨率等多个相关参数,特别是单粒子处理中被禁戒的跃迁贡献的先进计算,成功再现了Li-K sXAS。这样的对比实验和理论研究进一步扩展到一系列锂离子化合物,突出了考虑总能量和单粒子能量以获得光谱准确对齐的重要性。我们的工作通过先进的理论计算提供了首个可靠的锂金属表面Li-K sXAS。实验和理论结果为研究金属态和离子态锂化学提供了关键基准。

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